Computational modeling plays an important role in the design of orthopedic implants. In the case of biodegradable magnesium alloys, a modeling approach is required to predict the effects of degradation on the implant’s capacity to provide the desired stabilization of fractured bones. In the present work, a numerical corrosion model is implemented to predict the effects of biodegradation on the structural integrity of temporary trauma implants. A non-local average pitting corrosion model is calibrated based on experimental data collected from in vitro degradation experiments and mechanical testing of magnesium WE43 alloy specimens at different degradation stages. The localized corrosion (pitting) model was implemented by developing a user ma...
This study developed an enhanced phenomenological model for the predictions of surface-based localis...
The biggest challenge with magnesium alloy biodegradable implants is the rapid corrosion at the earl...
The biodegradation behavior of newly developed orthopedic implant materials provides essential insig...
Magnesium (Mg) and its alloys can degrade gradually up to complete dissolution in the physiological ...
Magnesium (Mg) is becoming increasingly popular for orthopaedic implant materials. Its mechanical pr...
© 2017 by the authors. Magnesium (Mg) is becoming increasingly popular for orthopaedic implant mater...
Background. Pure magnesium and its alloys are promising biodegradable biomaterials for cardiovascula...
The use of metallic biomaterials, such as titanium alloys, stainless steels and cobalt-chromium allo...
The world is facing an aging population and also there is an increase in war, and sports related inj...
Magnesium-based biodegradable materials are currently of great interest in various biomedical applic...
Magnésio e suas ligas são considerados candidatos promissores a substituírem os materiais metálicos ...
The main drawback of a conventional stenting procedure is the high risk of restenosis. The idea of a...
Inert but biocompatible metals and biodegradable polymers are currently used as orthopedic fixations...
Magnesium (Mg) and its alloys were initially investigated as resorbable orthopaedic biomaterials mor...
Metallic biomedical implants based on magnesium, zinc and iron alloys have emerged as bioresorbable...
This study developed an enhanced phenomenological model for the predictions of surface-based localis...
The biggest challenge with magnesium alloy biodegradable implants is the rapid corrosion at the earl...
The biodegradation behavior of newly developed orthopedic implant materials provides essential insig...
Magnesium (Mg) and its alloys can degrade gradually up to complete dissolution in the physiological ...
Magnesium (Mg) is becoming increasingly popular for orthopaedic implant materials. Its mechanical pr...
© 2017 by the authors. Magnesium (Mg) is becoming increasingly popular for orthopaedic implant mater...
Background. Pure magnesium and its alloys are promising biodegradable biomaterials for cardiovascula...
The use of metallic biomaterials, such as titanium alloys, stainless steels and cobalt-chromium allo...
The world is facing an aging population and also there is an increase in war, and sports related inj...
Magnesium-based biodegradable materials are currently of great interest in various biomedical applic...
Magnésio e suas ligas são considerados candidatos promissores a substituírem os materiais metálicos ...
The main drawback of a conventional stenting procedure is the high risk of restenosis. The idea of a...
Inert but biocompatible metals and biodegradable polymers are currently used as orthopedic fixations...
Magnesium (Mg) and its alloys were initially investigated as resorbable orthopaedic biomaterials mor...
Metallic biomedical implants based on magnesium, zinc and iron alloys have emerged as bioresorbable...
This study developed an enhanced phenomenological model for the predictions of surface-based localis...
The biggest challenge with magnesium alloy biodegradable implants is the rapid corrosion at the earl...
The biodegradation behavior of newly developed orthopedic implant materials provides essential insig...